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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Heterogeneous Cellular Networks Using Wireless Backhaul: Fast Admission Control and Large System Analysis
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Heterogeneous Cellular Networks Using Wireless Backhaul: Fast Admission Control and Large System Analysis

机译:使用无线回程的异构蜂窝网络:快速准入控制和大型系统分析

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摘要

We consider a heterogeneous cellular network with densely underlaid small cell access points (SAPs). Wireless backhaul provides the data connection from the core network to SAPs. To serve as many SAPs and their corresponding users as possible with guaranteed data rates, admission control of SAPs needs to be performed in wireless backhaul. Such a problem involves joint design of transmit beamformers, power control, and selection of SAPs. In order to tackle such a difficult problem, we apply -relaxation and propose an iterative algorithm for the -relaxed problem. The selection of SAPs is made based on the outputs of the iterative algorithm, and we prove such an algorithm converges locally. Furthermore, this algorithm is fast and enjoys low complexity for small-to-medium sized systems. However, its solution depends on the actual channel state information, and resuming the algorithm for each new channel realization may be unrealistic for large systems. Therefore, we make use of the random matrix theory and also propose an iterative algorithm for large systems. Such a large-system iterative algorithm can produce the asymptotically optimum solution for the -relaxed problem, which only requires large-scale channel coefficients irrespective of the actual channel realization. Near optimum results are achieved by our proposed algorithms in simulations.
机译:我们考虑具有密集底层小蜂窝接入点(SAP)的异构蜂窝网络。无线回程提供了从核心网络到SAP的数据连接。为了以保证的数据速率为尽可能多的SAP及其对应的用户提供服务,需要在无线回程中执行SAP的准入控制。这样的问题涉及发射波束形成器的联合设计,功率控制和SAP的选择。为了解决这个难题,我们应用了-relaxation并提出了一个针对-relaxed问题的迭代算法。基于迭代算法的输出进行SAP的选择,我们证明了这种算法在局部收敛。此外,该算法速度快,并且对于中小型系统而言具有较低的复杂度。但是,其解决方案取决于实际的信道状态信息,并且对于每个新的信道实现恢复算法对于大型系统而言可能是不现实的。因此,我们利用随机矩阵理论,并针对大型系统提出了一种迭代算法。这样的大系统迭代算法可以针对松弛问题产生渐近最优解,该问题只需要大规模信道系数,而与实际信道实现无关。通过我们在仿真中提出的算法,可以获得接近最佳的结果。

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